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Function library
Code table
10
421
EDS82EV903   EN   3.0
IMPORTANT
Possible settings
Code
Selection
Lenze
Name
No.
C0417
*
Free
configuration
of drive
controller
status
messages (1)
Output of digital signals on bus
Assignment is mapped onto the
Drive controller status word 1
(C0150)
AIF status word (AIF−STAT)
FIF output word 1 (FIF−OUT.W1)
Output word 1 in CAN object 1
(CAN-OUT1.W1)
  354
1
Bit 0
1
Active parameter set
PAR−B0 active (DCTRL1−PAR−B0)
Permanently assigned for
operation with communication
modules INTERBUS 211x,
PROFIBUS−DP 213x or
LECOM−A/B/LI 2102 on AIF. A
change is not possible!:
All bits are freely configurable in
operation with function modules
system bus (CAN), INTERBUS,
PROFIBUS−DP on FIF
2
Bit 1
2
Pulse inhibit active (DCTRL1−IMP)
3
Bit 2
3
I
max
limit reached (MCTRL1−IMAX)
(C0014 = −5−: torque setpoint reached)
4
Bit 3
4
Frequency setpoint reached
(DCTRL1−RFG1=NOUT)
5
Bit 4
5
Ramp−function generator 1: input =
output (NSET1−RFG1−I=O)
6
Bit 5
6
Frequency threshold Q
min
underrun
(f < C0017) (PCTRL1−QMIN)
7
Bit 6
7
Output frequency = 0
(DCTRL1−NOUT=0)
8
Bit 7
8
Controller inhibit active (DCTRL1−CINH)
9
Bit 8
9
11|10|9|
8
0000
0001
Device status
Device initialisation
Mains voltage off (with external supply
of the control section of the drive
controller)
10
Bit 9
10
0010
0011
0100
0101
0110
0111
1000
Switch−on inhibit
Operation inhibited
Flying restart circuit active
DC injection brake active
Operation enabled
Message active
Fault active
11
Bit 10
11
12
Bit 11
12
13
Bit 12
13
Group signal:
(DCTRL1−OH−PTC−LP1−FAN1−WARN)
14
Bit 13
14
DC bus overvoltage (DCTRL1−OV)
15
Bit 14
15
CCW rotation (DCTRL1−CCW)
16
Bit 15
16
Ready for operation (DCTRL1−RDY)
For possible digital signals for C0417 see C0415
C0418
*
Free
configuration
of drive
controller
status
messages (2)
Output of digital signals on bus
All bits are freely configurable
Assignment is mapped onto the
Drive controller status word 2
(C0151)
FIF output word 2 (FIF−OUT.W2)
Output word 1 in CAN object 2
(CAN-OUT2.W1)
  354
1
Bit 0
255
Not assigned (FIXED−FREE)
...
...
...
16
Bit 15
255
Not assigned (FIXED−FREE)
For possible digital signals for C0418 see C0415
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Function library
Code table
10
422
EDS82EV903  EN  3.0
IMPORTANT
Possible settings
Code
Selection
Lenze
Name
No.
C0419
Free
configuration
of analog
outputs
Output of analog signals to terminal
  332
1
X3/62
(AOUT1−IN)
0
Output frequency
(MCTRL1−NOUT+SLIP)
A selection in C0111 is copied into
C0419/1. Change of C0419/1 sets
C0111 = 255!
2
(A)
X3/63
(AOUT2−IN)
2
Apparent motor current
(MCTRL1−IMOT)
3
(A)
X3/A4
(DFOUT1−IN)
3
DC−bus voltage (MCTRL1−DCVOLT)
Frequency output: 50 Hz ... 10 kHz
C0419
(Cont.)
Possible analog signals for C0419
  332
0
Output frequency
(MCTRL1−NOUT+SLIP)
6 V/12 mA/5.85 kHz  C0011
1
Device utilisation (MCTRL1−MOUT) at
V/f characteristic control (C0014 = 2 or
3)
3 V/6 mA/2.925 kHz  rated active
inverter current (active
current/C0091)
Actual motor torque (MCTRL1−MACT)
with vector control (C0014 = 4) or
sensorless torque control (C0014 = 5)
3 V/6 mA/2.925 kHz  rated
motor torque
2
Apparent motor current
(MCTRL1−IMOT)
3 V/6 mA/2.925 kHz  rated
inverter current
3
DC−bus voltage (MCTRL1−DCVOLT)
6 V/12 mA/5.85 kHz  DC 1000 V
(400 V mains)
6 V/12 mA/5.85 kHz  DC 380 V
(230 V mains)
4
Motor power (MCTRL1−PMOT)
3 V/6 mA/2.925 kHz  rated
motor power
5
Motor voltage (MCTRL1−VOLT)
4.8 V/9.6 mA/4.68 kHz rated
motor voltage
6
1/output frequency (1/C0050)
(MCTRL1−1/NOUT)
2 V/4 mA/1.95 kHz  0.5  C0011
7
Output frequency within adjusted
limits (DCTRL1−C0010...C0011)
0 V/0 mA/4 mA/0 kHz  f = f
min
(C0010)
6 V/12 mA/5.85 kHz  f = f
max
(C0011)
8
Operation with process controller
(C0238 = 0, 1):
Actual process controller value
(PCTRL1−ACT)
6 V/12 mA/5.85 kHz  C0011
Operation without process controller
(C0238 = 2):
Output frequency without slip
(MCTRL1−NOUT)
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Function library
Code table
10
423
EDS82EV903   EN   3.0
IMPORTANT
Possible settings
Code
Selection
Lenze
Name
No.
C0419
(Cont.)
Possible analog signals for C0419
Selection 9 ... 25 corresponds to
the digital functions of the relay
output K1 or the digital switching
output K1 (C0008) or the digital
output A1 (C0117):
LOW = 0 V/0 mA/4 mA/ 0 kHz
HIGH =
10 V/20 mA/10 kHz
  332
9
Ready for operation (DCTRL1−RDY)
10
TRIP error message (DCTRL1−TRIP)
11
Motor is running (DCTRL1−RUN)
12
Motor is running / CW rotation
(DCTRL1−RUN−CW)
13
Motor is running / CCW rotation
(DCTRL1−RUN−CCW)
14
Output frequency = 0
(DCTRL1−NOUT=0)
15
Frequency setpoint reached
(DCTRL1−RFG1=NOUT)
16
Values have fallen below frequency
threshold Q
min
(f < C0017)
(PCTRL1−QMIN)
LOW active
17
I
max
limit reached (MCTRL1−IMAX)
C0014 = −5−: Torque setpoint reached
18
Overtemperature (
max
− 5 °C)
(DCTRL1-OH-WARN)
19
TRIP or Q
min
or pulse inhibit (IMP)
active (DCTRL1−TRIP−QMIN−IMP)
20
PTC warning (DCTRL1−PTC−WARN)
21
Apparent motor current < current
threshold (DCTRL1−IMOT<ILIM)
V−belt monitoring
Apparent motor current = C0054
Current threshold = C0156
Frequency threshold Q
min
= C0017
22
Apparent motor current < current
threshold and output frequency >
Frequency threshold Q
min
(DCTRL1−(IMOT<ILIM)−QMIN)
23
Apparent motor current < current
threshold and ramp function generator
1: input = output
(DCTRL1−(IMOT<ILIM)−RFG−I=0)
24
Motor phase failure warning
(DCTRL1−LP1−WARN)
25
Min. output frequency reached
(f  C0010) (PCTRL1−NMIN)
LOW active
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Function library
Code table
10
424
EDS82EV903  EN  3.0
IMPORTANT
Possible settings
Code
Selection
Lenze
Name
No.
C0419
(Cont.)
Possible analog signals for C0419
  332
26
Output frequency normalised without
slip (MCTRL1−NOUT−NORM)
27
Output frequency without slip
(MCTRL1−NOUT)
6 V/12 mA/5.85 kHz  C0011
28
Actual process controller value
(PCTRL1−ACT)
29
Process controller setpoint
(PCTRL1−SET1)
6 V/12 mA/5.85 kHz  C0011
30
Process controller output without
feedforward control (PCTRL1−OUT)
31
Ramp function generator input
(NSET1−RFG1−IN)
32
Ramp function generator output
(NSET1−NOUT)
33 (A)
PID controller output
(PCTRL1−PID−OUT)
34 (A)
Process controller output
(PCTRL1−NOUT)
35
Input signal at X3/8 (standard I/O) or
X3/1U or X3/1I (application I/O),
assessed with gain (C0414/1 or C0027)
and offset (C0413/1 or C0026)
(AIN1−OUT)
6 V/12 mA/5.85 kHz  maximum
value of analog input signal (5 V,
10 V, 20 mA, 10 kHz)
Condition: The gain of the analog
input or frequency input is set to:
C0414/x, C0426 = 100 %
36
Input signal at frequency input X3/E1
and X3/E2, assessed with gain (C0426)
and offset (C0427) (DFIN1−OUT)
37
Motor potentiometer
output(MPOT1−OUT)
38 (A)
Input signal at X3/2U or X3/2I,
assessed with gain (C0414/2) and
offset (C0413/2) (AIN2−OUT)
40
AIF input word 1 (AIF−IN.W1)
Setpoints to the controller from
communication module on AIF
10 V/20 mA/10 kHz  1000
41
AIF input word 2 (AIF−IN.W2)
50
CAN−IN1.W1 or FIF−IN.W1
Setpoints to controller from
function module on FIF
10 V/20 mA/10 kHz  1000
51
CAN−IN1.W2 or FIF−IN.W2
52
CAN−IN1.W3 or FIF−IN.W3
53
CAN−IN1.W4 or FIF−IN.W4
60
CAN−IN2.W1
61
CAN−IN2.W2
62
CAN−IN2.W3
63
CAN−IN2.W4
255
Not assigned (FIXED−FREE)
C0420
*
Gain − analog
output X3/62
(AOUT1−GAIN)
Standard I/O
128
0
{1}
255
128  Gain 1
C0420 and C0108 are equal
  332
C0420
*
(A)
Gain − analog
outputs
Application I/O
128  Gain 1
  332
1
X3/62
(AOUT1−GAIN)
128
0
{1}
255
C0420/1 and C0108 are equal
2
X3/63
(AOUT2−GAIN)
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Function library
Code table
10
425
EDS82EV903   EN   3.0
IMPORTANT
Possible settings
Code
Selection
Lenze
Name
No.
C0421
*
Free
configuration
of analog
process data
output words
Output of analog signals to bus
  338
1
AIF−OUT.W1
8
Operation with process controller
(C0238 = 0, 1):
Actual process controller value
(PCTRL1−ACT)
Operation without process controller
(C0238 = 2):
Output frequency without slip
(MCTRL1−NOUT)
2
AIF−OUT.W2
0
Output frequency
(MCTRL1−NOUT+SLIP)
3
CAN−OUT1.W1
/ FIF−OUT.W1
255
Not assigned (FIXED−FREE)
CAN−OUT1.W1 and
FIF−OUT.W1 are digitally
defined in the Lenze setting
and assigned to the 16 bits of
the controller status word 1
(C0417)
Before assigning an analog
signal source (C0421/3  255),
first delete the digital
assignment (C0417/x = 255)!
Otherwise, the output signal
would be wrong
4
CAN−OUT1.W2
/ FIF−OUT.W2
255
Not assigned (FIXED−FREE)
5
CAN−OUT1.W3
/ FIF−OUT.W3
255
Not assigned (FIXED−FREE)
6
CAN−OUT1.W4
/ FIF−OUT.W4
255
Not assigned (FIXED−FREE)
7
CAN−OUT2.W1
255
Not assigned (FIXED−FREE)
8
CAN−OUT2.W2
255
Not assigned (FIXED−FREE)
9
CAN−OUT2.W3
255
Not assigned (FIXED−FREE)
10
CAN−OUT2.W4
255
Not assigned (FIXED−FREE)
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Function library
Code table
10
426
EDS82EV903  EN  3.0
IMPORTANT
Possible settings
Code
Selection
Lenze
Name
No.
C0421
*
(Cont.)
Possible analog signals for C0421
  338
0
Output frequency
(MCTRL1−NOUT+SLIP)
24000  480 Hz
1
Device utilisation (MCTRL1−MOUT) at
V/f characteristic control (C0014 = 2 or
3)
16383  Rated active inverter
current (active current/C0091)
Actual motor torque (MCTRL1−MACT)
with vector control (C0014 = 4) or
sensorless torque control (C0014 = 5)
16383  Rated motor torque
2
Apparent motor current
(MCTRL1−IMOT)
16383  Rated inverter current
3
DC−bus voltage (MCTRL1−DCVOLT)
16383  565 V DC at 400 V mains
16383  325 V DC at 230 V mains
4
Motor power
285  Rated motor power
5
Motor voltage (MCTRL1−VOLT)
16383  Rated motor voltage
6
1/output frequency (1/C0050)
(MCTRL1−1/NOUT)
195  0.5  C0011
7
Output frequency within adjusted
limits (DCTRL1−C0010...C0011)
24000  480 Hz
0 f C0010
24000(fC0010)
480Hz
 f C0010
8
Operation with process controller
(C0238 = 0, 1):
Actual process controller value
(PCTRL1−ACT)
24000  480 Hz
Operation without process controller
(C0238 = 2):
Output frequency without slip
(MCTRL1−NOUT)
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Function library
Code table
10
427
EDS82EV903   EN   3.0
IMPORTANT
Possible settings
Code
Selection
Lenze
Name
No.
C0421
*
(Cont.)
Possible analog signals for C0421
Selection 9 ... 25 corresponds to
the digital functions of relay
output K1 (C0008) or digital
output A1 (C0117):
LOW = 0
HIGH =
1023
  338
9
Ready for operation (DCTRL1−RDY)
10
TRIP error message (DCTRL1−TRIP)
11
Motor is running (DCTRL1−RUN)
12
Motor is running / CW rotation
(DCTRL1−RUN−CW)
13
Motor is running / CCW rotation
(DCTRL1−RUN−CCW)
14
Output frequency = 0
(DCTRL1−NOUT=0)
15
Frequency setpoint reached
(DCTRL1−RFG1=NOUT)
16
Values have fallen below frequency
threshold Q
min
(f < C0017)
(PCTRL1−QMIN)
17
I
max
limit reached (MCTRL1−IMAX)
C0014 = −5−: Torque setpoint reached
18
Overtemperature (
max
−5 °C)
(DCTRL1-OH-WARN)
19
TRIP or Q
min
or pulse inhibit (IMP)
(DCTRL1−IMP)
20
PTC warning (DCTRL1−PTC−WARN)
21
Apparent motor current < current
threshold (DCTRL1−IMOT<ILIM)
V−belt monitoring
Apparent motor current = C0054
Current threshold = C0156
Frequency threshold Q
min
= C0017
22
Apparent motor current < current
threshold and output frequency >
Frequency threshold Q
min
(DCTRL1−(IMOT<ILIM)−QMIN)
23
Apparent motor current < current
threshold and ramp function generator
1: input = output
(DCTRL1−(IMOT<ILIM)−RFG−I=0)
24
Motor phase failure warning
(DCTRL1−LP1−WARN)
25
Min. output frequency reached
(f  C0010) (PCTRL1−NMIN)
Function library
Code table
10
428
EDS82EV903  EN  3.0
IMPORTANT
Possible settings
Code
Selection
Lenze
Name
No.
C0421
*
(Cont.)
Possible analog signals for C0421
  338
26
Output frequency normalised without
slip (MCTRL1−NOUT−NORM)
214  C0011
27
Output frequency without slip
(MCTRL1−NOUT)
24000  480 Hz
28
Actual process controller value
(PCTRL1−ACT)
29
Process controller setpoint
(PCTRL1−SET1)
30
Process controller output without
feedforward control (PCTRL1−OUT)
31
Ramp function generator input
(NSET1−RFG1−IN)
32
Ramp function generator output
(NSET1−NOUT)
33 (A)
PID controller output
(PCTRL1−PID−OUT)
34 (A)
Process controller output
(PCTRL1−NOUT)
35
Input signal at X3/8 (standard I/O) or
X3/1U or X3/1I (application I/O),
assessed with gain (C0414/1 or C0027)
and offset (C0413/1 or C0026)
(AIN1−OUT)
1000  Maximum value of analog
input signal (5 V, 10 V, 20 mA, 10
kHz)
Condition: The gain of the analog
input or frequency input is set to:
C0414/x, C0426 = 20/C0011 [%]
36
Input signal at frequency input X3/E1,
assessed with gain (C0426) and offset
(C0427) (DFIN1−OUT)
37
Motor potentiometer output
(MPOT1−OUT)
38 (A)
Input signal at X3/2U or X3/2I,
assessed with gain (C0414/2) and
offset (C0413/2) (AIN2−OUT)
40
AIF input word 1 (AIF−IN.W1)
Setpoints to the controller from
communication module on AIF
Normalisation via AIF
41
AIF input word 2 (AIF−IN.W2)
50
CAN−IN1.W1 or FIF−IN.W1
Setpoints to controller from
function module on FIF
Normalisation via CAN or FIF
51
CAN−IN1.W2 or FIF−IN.W2
52
CAN−IN1.W3 or FIF−IN.W3
53
CAN−IN1.W4 or FIF−IN.W4
60
CAN−IN2.W1
61
CAN−IN2.W2
62
CAN−IN2.W3
63
CAN−IN2.W4
255
Not assigned (FIXED−FREE)
C0422
*
Offset for
analog output
X3/62 (AOUT1−
OFFSET)
Standard I/O
0.00
−10.00
{0.01 V}
10.00
C0422 and C0109 are equal
  332
C0422
*
(A)
Offset of
analog outputs
Application I/O
−10.00
{0.01 V}
10.00
  332
1
X3/62 (AOUT1−
OFFSET)
0.00
C0422/1 and C0109 are the same
2
X3/63 (AOUT2−
OFFSET)
Function library
Code table
10
429
EDS82EV903   EN   3.0
IMPORTANT
Possible settings
Code
Selection
Lenze
Name
No.
C0423
*
(A)
Delay of digital
outputs
0.000
{0.001 s}
65.000 "Debouncing" of the digital
outputs
(from version: application I/O
E82ZAFA ... Vx11)
Switches the digital output if
the linked signal is still active
after the time set.
The digital output is reset
without delay
  348
1
Device version
151:
relay output K1
(RELAY)
Device version
152, 153:
Digital
switching
output K1
0.000
2
Digital output
X3/A1
(DIGOUT1)
0.000
3
Digital output
X3/A2
(DIGOUT2)
0.000
C0424
*
(A)
Output signal
range − analog
outputs
Application I/O
0
1
0 ... 10 V / 0 ... 20 mA
4 ... 20 mA
Observe jumper position of the
function module!
(from version: application I/O
E82ZAFA ... Vx11)
  332
1
X3/62 (AOUT1)
0
2
X3/63 (AOUT2)
0
Function library
Code table
10
430
EDS82EV903  EN  3.0
IMPORTANT
Possible settings
Code
Selection
Lenze
Name
No.
C0425
*
Configuration −
single−track
frequency
input X3/E1
(DFIN1)
2
f
r
f
min
t
f
max
f
N
= normalisation frequency
–f
N
corresponds to C0011
f
min
= resolution
t = sampling rate
–The lower the sampling rate
the higher the dynamics
f
max
= maximum frequency
which can be operated
depending on C0425
–Set C0425 so that, at
maximum motor speed, the
frequency supplied by the
encoder is lower than f
max
Activate the frequency input
with C0410/24 = 1
Adjust the frequency input
with C0426 and C0427
  303
0
100 Hz
1/200
1 s
300 Hz
1
1 kHz
1/200
100 ms
3 kHz
2
10 kHz
1/200
10 ms
10 kHz
3
10 kHz
1/1000
50 ms
10 kHz
4
10 kHz
1/10000
500 ms
10 kHz
5 (A)
102.4
kHz
1/400
2 ms
102.4
kHz
6 (A)
102.4
kHz
1/1000
5 ms
102.4
kHz
7 (A)
102.4
kHz
1/2000
10 ms
102.4
kHz
Configuration −
two−track
frequency
input X3/E1,
X3/E2 (DFIN1)
10
100 Hz
1/200
1 s
300 Hz
11
1 kHz
1/200
100 ms
3 kHz
12 (A)
10 kHz
1/200
10 ms
10 kHz
13 (A)
10 kHz
1/1000
50 ms
10 kHz
14 (A)
10 kHz
1/10000
500 ms
10 kHz
15 (A)
102.4
kHz
1/400
2 ms
102.4
kHz
16 (A)
102.4
kHz
1/1000
5 ms
102.4
kHz
17 (A)
102.4
kHz
1/2000
10 ms
102.4
kHz
C0426
*
Frequency
input gain
X3/E1, X3/E2
(A) (DFIN1−
GAIN)
100
−1500.0
{0.1 %}
1500.0
C0426 
f
N
p
zC0011
100%
f
N
= normalisation frequency
from C0425
p = number of motor pole pairs
z = number of encoder
increments
C0011 = maximum output
frequency (corresponds to
maximum process motor
speed)
C0427
*
Offset for
frequency
input X3/E1,
X3/E2 (A)
(DFIN1−OFFSET)
0.0
−100.0
{0.1 %}
100.0
C0428
*
(A)
Gain for
frequency
output
(DFOUT1−OUT)
100
0.0
{0.1 %}
1500.0
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